Takeda T, Maekawa K
Department of Physiology, Jichi Medical School, Tochigi-ken, Japan.
Neuroscience. 1989;32(1):99-111. doi: 10.1016/0306-4522(89)90110-3.
Postnatal development of mossy fiber afferents from the vestibular and the visual system to the vestibulocerebellum was studied electrophysiologically and morphologically. In kittens anesthetized with pentobarbital sodium and N2O plus halothane, extracellular simple and complex spikes of Purkinje cells were recorded in the flocculus, nodulus and uvula. In the flocculus, stimulation of the VIIIth, but not the optic nerve, evoked simple spike responses with a latency of 16 ms at the day of birth which decreased to 5 ms by day 15 (short latency group). On the other hand, another group of simple spike responses with much longer latencies (50-80 ms) began to be elicited on day 7 via both the optic and VIIIth nerves. The latency decreased to 24 ms by day 15 and 10 ms on day 30. These latencies further shortened with development to the adult latency value (3-5 ms). Simple spike responses of the short latency group were also evoked in the nodulus and uvula from the VIIIth nerve with a slightly longer latency than that in the flocculus (23 ms on day 3 and 12 ms on day 17). Because of the immaturity of granule cells in early postnatal days, short latency simple spike responses from the VIIIth nerve suggested the direct synaptic connection of vestibular mossy fibers with Purkinje cells. Horseradish peroxidase was injected into the white matter of the flocculus, nodulus and uvula in slice preparations. Mossy fibers labeled with horseradish peroxidase showed fine branches extending to reach Purkinje cell somata from mossy swellings in the internal granular layer during days 2-20. Electron microscopy showed that the labeled mossy fibers made intimate contacts with Purkinje cell somata and the terminals contained many round synaptic vesicles. Pre and postsynaptic densities were occasionally found. After day 20, direct mossy fiber connections with Purkinje cells could not be observed. During days 7-20, these direct connections, as well as mossy fiber-granule cell connections could be observed. It was demonstrated that during early postnatal development, vestibular mossy fibers temporarily make direct contact with Purkinje cells, through which impulses could be transmitted to elicit simple spikes in Purkinje cells.
用电生理学和形态学方法研究了前庭和视觉系统的苔藓纤维传入到前庭小脑的产后发育情况。在用戊巴比妥钠和N₂O加氟烷麻醉的小猫中,在绒球、小结和蚓垂记录浦肯野细胞的细胞外简单和复合锋电位。在绒球,刺激第八对脑神经而非视神经,在出生当天可诱发潜伏期为16毫秒的简单锋电位反应,到第15天时缩短至5毫秒(短潜伏期组)。另一方面,另一组潜伏期长得多(50 - 80毫秒)的简单锋电位反应在第7天开始通过视神经和第八对脑神经均可诱发。到第15天时潜伏期降至24毫秒,第30天时降至10毫秒。这些潜伏期随着发育进一步缩短至成年潜伏期值(3 - 5毫秒)。短潜伏期组的简单锋电位反应也可在小结和蚓垂由第八对脑神经诱发,潜伏期比在绒球略长(第3天为23毫秒,第17天为12毫秒)。由于出生后早期颗粒细胞不成熟,来自第八对脑神经的短潜伏期简单锋电位反应提示前庭苔藓纤维与浦肯野细胞之间存在直接突触联系。将辣根过氧化物酶注入切片标本的绒球、小结和蚓垂的白质中。在第2 - 20天期间,用辣根过氧化物酶标记的苔藓纤维显示出从内颗粒层的苔藓球发出的细分支延伸至浦肯野细胞胞体。电子显微镜显示,标记的苔藓纤维与浦肯野细胞胞体紧密接触,其终末含有许多圆形突触小泡。偶尔可见突触前和突触后致密物。第20天后,未观察到苔藓纤维与浦肯野细胞的直接连接。在第7 - 20天期间,可观察到这些直接连接以及苔藓纤维 - 颗粒细胞连接。结果表明,在出生后早期发育过程中,前庭苔藓纤维暂时与浦肯野细胞直接接触,通过这种接触冲动可被传递以诱发浦肯野细胞的简单锋电位。